Auditory Training Reverses Lead (Pb)-Toxicity-Induced Changes in Sound-Azimuth Selectivity of Cortical Neurons

Xia Liu, Fanfan Wei, Yuan Cheng, Yifan Zhang, Guoqiang Jia, Jie Zhou, Min Zhu, Ye Shan, Xinde Sun, Liping Yu, Michael M. Merzenich, Diana I. Lurie, Qingyin Zheng, Xiaoming Zhou

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Lead (Pb) causes significant adverse effects on the developing brain, resulting in cognitive and learning disabilities in children. The process by which lead produces these negative changes is largely unknown. The fact that children with these syndromes also show deficits in central auditory processing, however, indicates a speculative but disturbing relationship between lead-exposure, impaired auditory processing, and behavioral dysfunction. Here we studied in rats the changes in cortical spatial tuning impacted by early lead-exposure and their potential restoration to normal by auditory training. We found animals that were exposed to lead early in life displayed significant behavioral impairments compared with naïve controls while conducting the sound-azimuth discrimination task. Lead-exposure also degraded the sound-azimuth selectivity of neurons in the primary auditory cortex. Subsequent sound-azimuth discrimination training, however, restored to nearly normal the lead-degraded cortical azimuth selectivity. This reversal of cortical spatial fidelity was paralleled by changes in cortical expression of certain excitatory and inhibitory neurotransmitter receptor subunits. These results in a rodent model demonstrate the persisting neurotoxic effects of early lead-exposure on behavioral and cortical neuronal processing of spatial information of sound. They also indicate that attention-demanding auditory training may remediate lead-induced cortical neurological deficits even after these deficits have occurred.

Original languageEnglish
Pages (from-to)3294-3304
Number of pages11
JournalCerebral Cortex
Volume29
Issue number8
DOIs
StatePublished - 1 Aug 2019

Keywords

  • auditory cortex
  • behavioral training
  • lead (Pb)-exposure
  • rats
  • sound-azimuth selectivity

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